Sayers Charles J, Genco Armando, Trovatello Chiara, Conte Stefano Dal, Khaustov Vladislav O, Cervantes-Villanueva Jorge, Sangalli Davide, Molina-Sanchez Alejandro, Coletti Camilla, Gadermaier Christoph, Cerullo Giulio
Dipartimento di Fisica, Politecnico di Milano, 20133 Milano, Italy.
Department of Mechanical Engineering, Columbia University, New York, New York 10027, United States.
Nano Lett. 2023 Oct 25;23(20):9235-9242. doi: 10.1021/acs.nanolett.3c01936. Epub 2023 Sep 26.
The coupling of the electron system to lattice vibrations and their time-dependent control and detection provide unique insight into the nonequilibrium physics of semiconductors. Here, we investigate the ultrafast transient response of semiconducting monolayer 2-MoTe encapsulated with BN using broadband optical pump-probe microscopy. The sub-40 fs pump pulse triggers extremely intense and long-lived coherent oscillations in the spectral region of the A' and B' exciton resonances, up to ∼20% of the maximum transient signal, due to the displacive excitation of the out-of-plane phonon. Ab initio calculations reveal a dramatic rearrangement of the optical absorption of monolayer MoTe induced by an out-of-plane stretching and compression of the crystal lattice, consistent with an -type oscillation. Our results highlight the extreme sensitivity of the optical properties of monolayer TMDs to small structural modifications and their manipulation with light.
电子系统与晶格振动的耦合及其随时间的控制和检测为深入了解半导体的非平衡物理提供了独特视角。在此,我们使用宽带光泵浦-探测显微镜研究了包裹有BN的半导体单层2-MoTe的超快瞬态响应。低于40飞秒的泵浦脉冲在A'和B'激子共振的光谱区域引发了极其强烈且长寿命的相干振荡,由于面外声子的位移激发,该振荡强度高达最大瞬态信号的约20%。从头算计算表明,晶格的面外拉伸和压缩会引起单层MoTe光吸收的显著重新排列,这与一种π型振荡一致。我们的结果突出了单层过渡金属二卤化物光学性质对微小结构变化及其光操控的极端敏感性。